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M-142 Multifunction Calibrator
MEATEST, s.r.o.
24
User Manual v54
•
below the main data, an information about the shape type „Shape xxxxx“ is displayed.
•
below the main data, calculated effective value of the output signal is displayed.
•
for squarewave signals, set value of duty cycle „PWM= xx %“ is displayed.
Simulation of resistance and capacitance
The multifunction calibrator can simulate an exact value of resistance or capacitance. The outputs of the
simulator are connected to Hi – Lo terminals and to AUXILIARY connector (pins 20, 21, 22, 23). 4W resistance
is accessible only via cable adapter Opt. 70.
Only two-wire connection is available on the front panel terminals Hi-Lo. Both two-wire and four-wire
connection is possible only through AUXILIARY connector. The terminals SIMHI - SIMLI are current
terminals and SIMHU - SIMLU are voltage sensing terminals. Cable adapter Option 70 must be used for four-
wire connection. Type of cable adapter currently connected to the AUXILIARY connector, is displayed on the
display. If Option 70 is connected, label CA 140-70 is displayed in the right side.
Cable adapter Option 70 can be used for four-wire connecting of simulated resistance only. In compare with
direct two-wire connection through output terminals Hi – Lo, accuracy of resistance is better with Option 70, see
Technical data. When Cable adapter Option 70 is connected to the AUXILIARY connector, only resistance
mode and resistance temperature simulation mode can be chosen.
The resolution of resistance and capacitance depends on the set value and corresponds to 0.01 % of set value.
Minimum set value is 0.01
Resistance simulation range is 0
to 1000 M
.
Capacitance simulation range is 0.7 nF to 100
F.
Control in the resistance and capacitance mode
•
press R-C button on the calibrator. The display shows the set resistance.
•
If you want to simulate a capacitance, press R-C button again. The display shows the set capacitance.
•
The display shows the following data:
*
main data of set resistance (capacitance)
*
relative deviation of resistance (capacitance)
*
uncertainty of set resistance (capacitance)
*
total value of resistance (capacitance) if non-zero deviation is set